4.8 Article

Tunable Microwave Absorption Frequency by Aspect Ratio of Hollow Polydopamine@α-MnO2 Microspindles Studied by Electron Holography

期刊

ACS APPLIED MATERIALS & INTERFACES
卷 8, 期 15, 页码 9782-9789

出版社

AMER CHEMICAL SOC
DOI: 10.1021/acsami.6b00978

关键词

core-shell structure; microwave absorption; tunable frequency; aspect ratio; dielectric loss; manganese dioxide; electron holography

资金

  1. National Natural Foundation of China [51172047, 11274066, U1330118, 51102050]
  2. Ministry of Science and Technology of China (973 Project) [2013CB932901]
  3. Shanghai Pujiang Program
  4. Shu Guang project of Shanghai Municipal Education Commission
  5. Shanghai Education Development Foundation [09SG01]

向作者/读者索取更多资源

A tunable response frequency is highly desirable for practical applications of microwave absorption materials but remains a great challenge. Here, hollow lightweight polydopamine@alpha-MnO2 microspindles were facilely synthesized with the tunable absorption frequency governed by the aspect ratio. The size of the hard template is a key factor to achieve the unique shape; the polymer layer with uniform thickness plays an important role in obtaining spindles with homogeneous size. With the aspect ratio increasing, the maximum reflection loss, as well as the absorption bandwidth (<-10 dB), increases and then decreases; meanwhile, the microwave absorption band shifts to the low frequency. The optimized aspect ratio of the cavity about the hollow polydopamine@alpha-MnO2 microspindles is similar to 2.8 With 3 mm thickness at 9.7 GHz, the strongest reflection reaches -21.8 dB, and the width of the absorbing band (<-10 dB) is as wide as 3.3 GHz. Via electron holography, it is confirmed that strong charge accumulates around the interface between the polydopamine and alpha-MnO2 layers, which mainly contributes to the dielectric polarization absorption. This study proposes a reliable strategy to tune the absorption frequency via different aspect ratio polymer@alpha-MnO2 microspindles.

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